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Zhang ZX, Lian D, Huang X, Wang S, Sun H, Liu W, Garcia B, Min WP, Jevnikar AM. Adoptive transfer of DNT cells induces long-term cardiac allograft survival and augments recipient CD4(+)Foxp3(+) Treg cell accumulation. Transpl Immunol 2011; 24:119-126. [PMID: 21073952 DOI: 10.1016/j.trim.2010.11.003] [Citation(s) in RCA: 19] [Impact Index Per Article: 1.4] [Reference Citation Analysis] [Abstract] [MESH Headings] [Grants] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 08/07/2010] [Revised: 11/03/2010] [Accepted: 11/04/2010] [Indexed: 01/26/2023]
Abstract
Regulatory T (Treg) cells play an important role in the regulation of immune responses but whether Treg will induce tolerance in transplant recipients in the clinic remains unknown. Our previous studies have shown that TCRαβ(+)CD3(+)CD4⁻CD8⁻NK1.1⁻ (double negative, DN) T cells suppress T cell responses and prolong allograft survival in a single locus MHC-mismatched mouse model. In this study, we investigated the role of DNT cells in a more robust, fully MHC-mismatched BALB/c to C57BL/6 transplantation model, which may be more clinically relevant. Adoptive transfer of DNT cells in combination with short-term rapamycin treatment (days 1-9) induced long-term heart allograft survival (101±31 vs. 39±13 days rapamycin alone, p<0.01). Furthermore adoptive transfer DNT cells augmented CD4+Foxp3+ Treg cells accumulation in transplant recipients while depletion of CD4(+) Treg cells by anti-CD25 inhibited the effect of DNT cells on long-term graft survival (48±12 days vs. 101±31 days, p<0.001). In conclusion, DNT cells combined with short-term immunosuppression can prolong allograft survival, which may be through the accumulation of CD4(+)Foxp3(+) Treg cells in the recipient. Our result suggests that allograft tolerance may require the co-existence of different type Treg cell phenotypes which are affected by current immunosuppression.
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Affiliation(s)
- Zhu-Xu Zhang
- The Multi-Organ Transplant Program, London Health Sciences Centre, London, Ontario, Canada.
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52
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Abstract
Peripheral αβTCR(+)CD3(+)CD4(-)CD8(-) NK1.1/CD56(-) double-negative (DN) Treg cells are a relatively rare subset of regulatory cells found in both humans and mice, typically comprising less than 5% of the total peripheral T-cell pool. Numerous studies have shown that DN Tregs can inhibit CD4(+) and CD8(+) T-cell responses in vitro and in vivo using a variety of model systems [Zhang et al., Nature Medicine 6:782, 2000; Young et al., Blood 100:3408, 2002; Ford et al., Experimental Medicine 196:261, 2002; Young et al., Journal of Immunology 171:134, 2003; Ford et al., European Journal of Immunology 37:2234, 2007; Zhang et al., Blood 109:4071, 2007; Fischer et al., Blood 105:2828, 2005]. This chapter describes published methods for the phenotypic identification of DN Tregs, their isolation from secondary lymphoid organs of mice or human peripheral blood, activation and expansion, and assays for their ability to suppress T-cell proliferation, induce apoptosis, and promote tolerance to allografts in vivo.
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Affiliation(s)
- Edward Y Kim
- Toronto General Hospital Research Institute, Toronto, ON, Canada
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53
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Implication of the CD47 pathway in autoimmune diabetes. J Autoimmun 2010; 35:23-32. [DOI: 10.1016/j.jaut.2010.01.002] [Citation(s) in RCA: 32] [Impact Index Per Article: 2.1] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 07/21/2009] [Revised: 12/18/2009] [Accepted: 01/10/2010] [Indexed: 12/23/2022]
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Hillhouse EE, Beauchamp C, Chabot‐Roy G, Dugas V, Lesage S. Interleukin‐10 limits the expansion of immunoregulatory CD4
−
CD8
−
T cells in autoimmune‐prone non‐obese diabetic mice. Immunol Cell Biol 2010; 88:771-80. [DOI: 10.1038/icb.2010.84] [Citation(s) in RCA: 36] [Impact Index Per Article: 2.4] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 01/06/2023]
Affiliation(s)
- Erin E Hillhouse
- Immunology‐Oncology Section, Research Center, Maisonneuve‐Rosemont Hospital Montreal Quebec Canada
- Department of Microbiology and Immunology, University of Montreal Montreal Quebec Canada
| | - Claudine Beauchamp
- Immunology‐Oncology Section, Research Center, Maisonneuve‐Rosemont Hospital Montreal Quebec Canada
- Department of Microbiology and Immunology, University of Montreal Montreal Quebec Canada
| | - Geneviève Chabot‐Roy
- Immunology‐Oncology Section, Research Center, Maisonneuve‐Rosemont Hospital Montreal Quebec Canada
| | - Véronique Dugas
- Immunology‐Oncology Section, Research Center, Maisonneuve‐Rosemont Hospital Montreal Quebec Canada
- Department of Microbiology and Immunology, University of Montreal Montreal Quebec Canada
| | - Sylvie Lesage
- Immunology‐Oncology Section, Research Center, Maisonneuve‐Rosemont Hospital Montreal Quebec Canada
- Department of Microbiology and Immunology, University of Montreal Montreal Quebec Canada
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55
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Cowley SC, Meierovics AI, Frelinger JA, Iwakura Y, Elkins KL. Lung CD4−CD8−Double-Negative T Cells Are Prominent Producers of IL-17A and IFN-γ during Primary Respiratory Murine Infection withFrancisellatularensisLive Vaccine Strain. THE JOURNAL OF IMMUNOLOGY 2010; 184:5791-801. [DOI: 10.4049/jimmunol.1000362] [Citation(s) in RCA: 82] [Impact Index Per Article: 5.5] [Reference Citation Analysis] [Track Full Text] [Subscribe] [Scholar Register] [Indexed: 01/29/2023]
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56
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57
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Voelkl S, Moore TV, Rehli M, Nishimura MI, Mackensen A, Fischer K. Characterization of MHC class-I restricted TCRalphabeta+ CD4- CD8- double negative T cells recognizing the gp100 antigen from a melanoma patient after gp100 vaccination. Cancer Immunol Immunother 2009; 58:709-18. [PMID: 18836718 PMCID: PMC2832593 DOI: 10.1007/s00262-008-0593-3] [Citation(s) in RCA: 31] [Impact Index Per Article: 1.9] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Grants] [Track Full Text] [Download PDF] [Journal Information] [Subscribe] [Scholar Register] [Received: 02/20/2008] [Accepted: 09/05/2008] [Indexed: 12/18/2022]
Abstract
The immune attack against malignant tumors require the concerted action of CD8+ cytotoxic T lymphocytes (CTL) as well as CD4+ T helper cells. The contribution of T cell receptor (TCR) alphabeta+ CD4- CD8- double-negative (DN) T cells to anti-tumor immune responses is widely unknown. In previous studies, we have demonstrated that DN T cells with a broad TCR repertoire are present in humans in the peripheral blood and the lymph nodes of healthy individuals. Here, we characterize a human DN T cell clone (T4H2) recognizing an HLA-A2-restricted melanoma-associated antigenic gp100-peptide isolated from the peripheral blood of a melanoma patient. Antigen recognition by the T4H2 DN clone resulted in specific secretion of IFN-gamma and TNF. Although lacking the CD8 molecule the gp100-specific DN T cell clone was able to confer antigen-specific cytotoxicity against gp100-loaded target cells as well as HLA-A2+ gp100 expressing melanoma cells. The cytotoxic capacity was found to be perforin/granzymeB-dependent. Together, these data indicate that functionally active antigen-specific DN T cells recognizing MHC class I-restricted tumor-associated antigen (TAA) may contribute to anti-tumor immunity in vivo.
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MESH Headings
- Antigen Presentation
- Antigens, CD/analysis
- Antigens, Neoplasm/immunology
- Cancer Vaccines/immunology
- Cancer Vaccines/therapeutic use
- Cell Line, Tumor/immunology
- Clone Cells/immunology
- Clone Cells/metabolism
- Cytotoxicity, Immunologic
- Granzymes/immunology
- HLA-A2 Antigen/immunology
- Humans
- Immunophenotyping
- Immunotherapy, Active
- Interferon-gamma/metabolism
- Interleukins/metabolism
- Melanoma/blood
- Melanoma/immunology
- Melanoma/therapy
- Membrane Glycoproteins/immunology
- Perforin/immunology
- Receptors, Antigen, T-Cell, alpha-beta/analysis
- Receptors, Antigen, T-Cell, alpha-beta/immunology
- T-Lymphocyte Subsets/immunology
- T-Lymphocyte Subsets/metabolism
- T-Lymphocytes, Cytotoxic/immunology
- T-Lymphocytes, Cytotoxic/metabolism
- Tumor Necrosis Factor-alpha/metabolism
- gp100 Melanoma Antigen
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Affiliation(s)
- Simon Voelkl
- Department of Internal Medicine 5, Hematology/Oncology, University of Erlangen-Nuernberg, Krankenhausstrasse 12, 91054 Erlangen, Germany
- Department of Hematology and Oncology, University of Regensburg, 93042 Regensburg, Germany
| | - Tamson V. Moore
- Department of Surgery, The University of Chicago, Chicago, IL 60637 USA
| | - Michael Rehli
- Department of Hematology and Oncology, University of Regensburg, 93042 Regensburg, Germany
| | - Michael I. Nishimura
- Department of Surgery, The University of Chicago, Chicago, IL 60637 USA
- Departments of Surgery and Microbiology and Immunology, Medical University of South Carolina, Charleston, SC 29425 USA
| | - Andreas Mackensen
- Department of Internal Medicine 5, Hematology/Oncology, University of Erlangen-Nuernberg, Krankenhausstrasse 12, 91054 Erlangen, Germany
- Department of Hematology and Oncology, University of Regensburg, 93042 Regensburg, Germany
| | - Karin Fischer
- Department of Hematology and Oncology, University of Regensburg, 93042 Regensburg, Germany
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58
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Gordon EJ, Kelkar V. Natural killer T cell facilitated engraftment of rat skin but not islet xenografts in mice. Xenotransplantation 2009; 16:135-44. [DOI: 10.1111/j.1399-3089.2009.00524.x] [Citation(s) in RCA: 3] [Impact Index Per Article: 0.2] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/30/2022]
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59
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Muller YD, Golshayan D, Ehirchiou D, Wekerle T, Seebach JD, Bühler LH. T regulatory cells in xenotransplantation. Xenotransplantation 2009; 16:121-8. [DOI: 10.1111/j.1399-3089.2009.00531.x] [Citation(s) in RCA: 28] [Impact Index Per Article: 1.8] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 12/17/2022]
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60
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Sarcon AK, Desierto MJ, Zhou W, Visconte V, Gibellini F, Chen J, Young NS. Role of perforin-mediated cell apoptosis in murine models of infusion-induced bone marrow failure. Exp Hematol 2009; 37:477-86. [PMID: 19216020 PMCID: PMC2692757 DOI: 10.1016/j.exphem.2008.12.001] [Citation(s) in RCA: 10] [Impact Index Per Article: 0.6] [Reference Citation Analysis] [Abstract] [MESH Headings] [Grants] [Track Full Text] [Download PDF] [Journal Information] [Subscribe] [Scholar Register] [Received: 09/10/2008] [Revised: 11/26/2008] [Accepted: 12/02/2008] [Indexed: 11/30/2022]
Abstract
OBJECTIVE To investigate the role of perforin-mediated cell apoptosis in murine models of immune-mediated bone marrow (BM) failure. MATERIALS AND METHODS We compared C57BL/6J (B6) mice carrying a perforin gene deletion (Prf(-/-)) with wild-type (WT) controls for cellular composition in lymphohematopoietic tissues. Lymph node (LN) cells from Prf(-/-) mice were coincubated with BM cells from B10-H2(b)/LilMcdJ (C.B10) mice in an apoptosis assay in vitro. We then infused Prf(-/-) and WT B6 LN cells into sublethally irradiated C.B10 and CByB6F1 recipients with mismatches at the minor and major histocompatibility loci, respectively, in order to induce BM failure. Cellular composition was analyzed by flow cytometry. RESULTS Prf(-/-) mice showed normal lymphoid cell composition, but Prf(-/-) LN cells had reduced ability to induce C.B10 BM cell apoptosis in vitro. Infusion of 5 to 10 x 10(6) Prf(-/-) LN cells produced obvious BM failure in C.B10 and CByB6F1 recipients; pancytopenia and BM hypocellularity were only slightly less severe than those caused by infusion of 5 x 10(6) WT B6 LN cells. Infused Prf(-/-) LN cells showed less T-cell expansion, normal T-cell activation, and higher proportions of T cells expressing gamma-interferon, tissue necrosis factor-alpha, and Fas ligand CD178, in comparison to infused WT B6 LN cells. Fas expression was equally high in residual BM cells in recipient of both Prf(-/-) and B6 LN cells. CONCLUSION Perforin deficiency alters T-cell expansion but upregulates T-cell Fas ligand expression. Perforin-mediated cell death appears to play a minor role in mouse models of immune-mediated BM failure.
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Affiliation(s)
- Annahita K Sarcon
- Hematology Branch, National Heart, Lung, and Blood Institute, National Institutes of Health, Bethesda, MD 20892-1202, USA
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61
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Ma Y, He KM, Garcia B, Min W, Jevnikar A, Zhang ZX. Adoptive transfer of double negative T regulatory cells induces B-cell death in vivo and alters rejection pattern of rat-to-mouse heart transplantation. Xenotransplantation 2008; 15:56-63. [PMID: 18333914 DOI: 10.1111/j.1399-3089.2008.00444.x] [Citation(s) in RCA: 39] [Impact Index Per Article: 2.3] [Reference Citation Analysis] [Abstract] [MESH Headings] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 02/11/2025]
Abstract
BACKGROUND Antibody-mediated hyperacute and acute graft rejection are major obstacles in achieving long-term graft survival in xenotransplantation. It is well documented that regulatory T (Treg) cells play a very important role in regulating immune responses to self and non-self antigens. Our previous studies have shown that TCRalphabeta+CD3+CD4-CD8- (double negative, DN)-Treg cells can suppress anti-donor T-cell responses and prolong graft survival in allo- and xenotransplantation models. We have demonstrated that DN-Treg cells can induce B-cell apoptosis in vitro through a perforin-dependent pathway. METHODS B6 mice received rat heart grafts, followed by 14 days of LF15-0195 treatment. Some mice received Lewis rat cell activated DN-Treg cells after LF treatment. DN-Treg cells, purified from perforin-/- mice and from B6 mice pre-immunized with third party rat cells, were used as controls. RESULTS In this study, we investigated the possibility that adoptive transfer of xenoreactive DN-Treg cells could suppress B cells in vivo, thus prolonging xenograft survival. We found that apoptotic death of B cells significantly increased after adoptive transfer of DN-Treg cells. In addition, anti-donor IgG subtypes were significantly inhibited in the DN-Treg cell-treated group, in which the rejection pattern was altered towards cellular-mediated rejection rather than antibody-mediated acute vascular rejection. However, perforin-deficient DN-Treg cells failed to induce B-cell death and to prolong heart graft survival, indicating a perforin-dependent mechanism contributes to B-cell death in vivo. CONCLUSIONS This study suggests that adoptive transfer of xenoreactive DN-Treg cells can inhibit B-cell responses in vivo. DN-Treg cells may be valuable in controlling B-cell responses in xenotransplantation.
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Affiliation(s)
- Yuexia Ma
- Immunology and Transplantation, Lawson Health Research Institute, London, Ontario, Canada
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62
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He KM, Ma Y, Wang S, Min WP, Zhong R, Jevnikar A, Zhang ZX. Donor double-negative Treg promote allogeneic mixed chimerism and tolerance. Eur J Immunol 2007; 37:3455-3466. [PMID: 18000953 DOI: 10.1002/eji.200737408] [Citation(s) in RCA: 27] [Impact Index Per Article: 1.5] [Reference Citation Analysis] [Abstract] [MESH Headings] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 12/24/2022]
Abstract
Bone marrow (BM) transplantation is an efficient approach to develop donor-specific tolerance and prevent chronic rejection. Allogeneic BM transplantation is limited by donor T cell-mediated graft-versus-host disease, requirement of cytoreduction and high numbers of BM cells. In addition of these drawbacks, recent studies demonstrate that not only T cells, but also NK cells can mediate BM rejection, and long-term mixed chimerism depends on NK cell tolerance. Thus, NK cell is another potential barrier against engraftment of BM and an important target in efforts to induce transplant tolerance. We have previously identified a novel type of Treg with the phenotype TCRalphabeta+CD3+CD4-CD8- (double-negative, DN). We and others have demonstrated that DN-Treg can effectively suppress anti-donor T cell responses. In this study, we found that donor-derived DN-Treg can suppress NK cell-mediated allogeneic BM graft rejection in both parent-to-F1 and fully MHC-mismatched BM transplantation models. Perforin and FasL in DN-Treg play important roles in the suppression of NK cells. Furthermore, adoptive transfer of DN-Treg can promote a stable mixed chimerism and donor-specific tolerance without inducing graft-versus-host disease. These results demonstrate a potential approach to control innate immune responses and promote allogeneic BM engraftment.
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Affiliation(s)
- Kathy M He
- Multi-Organ Transplant Program, London Health Sciences Centre, London, Ontario, Canada
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63
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Zimmermann VS, Casati A, Schiering C, Caserta S, Hess Michelini R, Basso V, Mondino A. Tumors Hamper the Immunogenic Competence of CD4+T Cell-Directed Dendritic Cell Vaccination. THE JOURNAL OF IMMUNOLOGY 2007; 179:2899-909. [PMID: 17709504 DOI: 10.4049/jimmunol.179.5.2899] [Citation(s) in RCA: 10] [Impact Index Per Article: 0.6] [Reference Citation Analysis] [Abstract] [MESH Headings] [Track Full Text] [Subscribe] [Scholar Register] [Indexed: 11/19/2022]
Abstract
Dendritic cells loaded with tumor-derived peptides induce protective CTL responses and are under evaluation in clinical trails. We report in this study that prophylactic administration of dendritic cells loaded with a MHC class II-restricted peptide derived from a model tumor Ag (Leishmania receptor for activated C kinase (LACK)) confers protection against LACK-expressing TS/A tumors, whereas therapeutic vaccination fails to cure tumor-bearing mice. Although CD4+ T cell-directed dendritic cell vaccination primed effector-like (CD44(high)CD62L(low), IL-2(+), IFN-gamma(+)) and central memory-like lymphocytes (CD44(high)CD62L(high), only IL-2(+)) in tumor-free mice, this was not the case in tumor-bearing animals in which both priming and persistence of CD4+ T cell memory were suppressed. Suppression was specific for the tumor-associated Ag LACK, and did not depend on CD25+ T cells. Because T cell help is needed for protective immunity, we speculate that the ability of tumors to limit vaccine-induced CD4+ T cell memory could provide a partial explanation for the limited efficacy of current strategies.
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Affiliation(s)
- Valérie S Zimmermann
- Cancer Immunotherapy and Gene Therapy Program, Department of Biotechnology, San Raffaele Scientific Institute, Via Olgettina 58, 20132 Milan, Italy
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Baertschiger RM, Buhler LH. Xenotransplantation literature update November-December 2006. Xenotransplantation 2007; 14:166-70. [PMID: 17381692 DOI: 10.1111/j.1399-3089.2007.00388.x] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [MESH Headings] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/28/2022]
Affiliation(s)
- Reto M Baertschiger
- Surgical Research Unit, Department of Surgery, University Hospital Geneva, Geneva, Switzerland
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